Evaluation of Systems' Irregularity and Complexity : : Sample Entropy, Its Derivatives, and Their Applications across Scales and Disciplines / / Anne Humeau-Heurtier.

Based on information theory, a number of entropy measures have been proposed since the 1990s to assess systems' irregularity, such as approximate entropy, sample entropy, permutation entropy, intrinsic mode entropy, and dispersion entropy, to cite only a few. Among them, sample entropy has been...

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Place / Publishing House:Basel, Switzerland : : MDPI - Multidisciplinary Digital Publishing Institute,, 2018.
Year of Publication:2018
Language:English
Physical Description:1 online resource (264 pages)
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spelling Humeau-Heurtier, Anne, author.
Evaluation of Systems' Irregularity and Complexity : Sample Entropy, Its Derivatives, and Their Applications across Scales and Disciplines / Anne Humeau-Heurtier.
Evaluation of Systems’ Irregularity and Complexity
Evaluation of Systems’ Irregularity and Complexity
Basel, Switzerland : MDPI - Multidisciplinary Digital Publishing Institute, 2018.
1 online resource (264 pages)
text txt rdacontent
computer c rdamedia
online resource cr rdacarrier
Description based on publisher supplied metadata and other sources.
Based on information theory, a number of entropy measures have been proposed since the 1990s to assess systems' irregularity, such as approximate entropy, sample entropy, permutation entropy, intrinsic mode entropy, and dispersion entropy, to cite only a few. Among them, sample entropy has been used in a very large variety of disciplines for both univariate and multivariate data. However, improvements to the sample entropy algorithm are still being proposed because sample entropy is unstable for short time series, may be sensitive to parameter values, and can be too time-consuming for long data. At the same time, it is worth noting that sample entropy does not take into account the multiple temporal scales inherent in complex systems. It is maximized for completely random processes and is used only to quantify the irregularity of signals on a single scale. This is why analyses of irregularity-with sample entropy or its derivatives-at multiple time scales have been proposed to assess systems' complexity. This Book presents contributions related to new and original research based on the use of sample entropy or its derivatives.
Entropy (Information theory)
3-03897-332-7
language English
format eBook
author Humeau-Heurtier, Anne,
spellingShingle Humeau-Heurtier, Anne,
Evaluation of Systems' Irregularity and Complexity : Sample Entropy, Its Derivatives, and Their Applications across Scales and Disciplines /
author_facet Humeau-Heurtier, Anne,
author_variant a h h ahh
author_role VerfasserIn
author_sort Humeau-Heurtier, Anne,
title Evaluation of Systems' Irregularity and Complexity : Sample Entropy, Its Derivatives, and Their Applications across Scales and Disciplines /
title_sub Sample Entropy, Its Derivatives, and Their Applications across Scales and Disciplines /
title_full Evaluation of Systems' Irregularity and Complexity : Sample Entropy, Its Derivatives, and Their Applications across Scales and Disciplines / Anne Humeau-Heurtier.
title_fullStr Evaluation of Systems' Irregularity and Complexity : Sample Entropy, Its Derivatives, and Their Applications across Scales and Disciplines / Anne Humeau-Heurtier.
title_full_unstemmed Evaluation of Systems' Irregularity and Complexity : Sample Entropy, Its Derivatives, and Their Applications across Scales and Disciplines / Anne Humeau-Heurtier.
title_auth Evaluation of Systems' Irregularity and Complexity : Sample Entropy, Its Derivatives, and Their Applications across Scales and Disciplines /
title_alt Evaluation of Systems’ Irregularity and Complexity
Evaluation of Systems’ Irregularity and Complexity
title_new Evaluation of Systems' Irregularity and Complexity :
title_sort evaluation of systems' irregularity and complexity : sample entropy, its derivatives, and their applications across scales and disciplines /
publisher MDPI - Multidisciplinary Digital Publishing Institute,
publishDate 2018
physical 1 online resource (264 pages)
isbn 3-03897-332-7
callnumber-first Q - Science
callnumber-subject Q - General Science
callnumber-label Q370
callnumber-sort Q 3370 H864 42018
illustrated Not Illustrated
dewey-hundreds 000 - Computer science, information & general works
dewey-tens 000 - Computer science, knowledge & systems
dewey-ones 003 - Systems
dewey-full 003.54
dewey-sort 13.54
dewey-raw 003.54
dewey-search 003.54
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